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Bandgap‐Tunable Cesium Lead Halide Perovskites with High Thermal Stability for Efficient Solar Cells

Advanced Energy Materials · 2016 · Vol. 6(8)
Rebecca J. SuttonGiles E. EperonLaura MirandaElizabeth S. ParrottBrett A. KaminoJay B. PatelMaximilian T. HörantnerMichael B. JohnstonAmir A. HaghighiradDavid T. MooreHenry J. Snaith

Abstract

Highest reported efficiency cesium lead halide perovskite solar cells are realized by tuning the bandgap and stabilizing the black perovskite phase at lower temperatures. CsPbI2Br is employed in a planar architecture device resulting in 9.8% power conversion efficiency and over 5% stabilized power output. Offering substantially enhanced thermal stability over their organic based counterparts, these results show that all-inorganic perovskites can represent a promising next step for photovoltaic materials. As a service to our authors and readers, this journal provides supporting information supplied by the authors. Such materials are peer reviewed and may be re-organized for online delivery, but are not copy-edited or typeset. Technical support issues arising from supporting information (other than missing files) should be addressed to the authors. Please note: The publisher is not responsible for the content or functionality of any supporting information supplied by the authors. Any queries (other than missing content) should be directed to the corresponding author for the article.

Perovskite Materials and ApplicationsConducting polymers and applicationsOrganic Electronics and PhotovoltaicsPerovskite (structure)HalideMaterials scienceThermal stabilityCaesiumPhotovoltaic systemBand gapEnergy conversion efficiencyLead (geology)Phase (matter)

Funding

  • Engineering and Physical Sciences Research Council
Citations
1,537
FWCI
100.86
field-weighted impact
References
35
Percentile
100%
vs. same field & year
Citations per year
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